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Relativistic quantum field theory

This volume is intended for use as a text for an introductory quantum field theory course that can include both particle and condensed matter physics students. Dr. Strickland starts with a brief review of classical field theory and uses this as a jumping off point for the quantization of classical f...

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Autor principal: Strickland, Michael
Lenguaje:eng
Publicado: Morgan and Claypool 2019
Materias:
Acceso en línea:http://cds.cern.ch/record/2709286
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author Strickland, Michael
author_facet Strickland, Michael
author_sort Strickland, Michael
collection CERN
description This volume is intended for use as a text for an introductory quantum field theory course that can include both particle and condensed matter physics students. Dr. Strickland starts with a brief review of classical field theory and uses this as a jumping off point for the quantization of classical field, thereby promoting them to proper quantum fields. He then presents the formalism for real and complex scalar field theories, fermion field quantization, gauge field quantization, toy models of the nuclear interaction, and finally the full Lagrangian for QED and its renormalization. Part of IOP Series in Nuclear Medicine.
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spelling cern-27092862021-04-21T18:10:29Zhttp://cds.cern.ch/record/2709286engStrickland, MichaelRelativistic quantum field theoryGeneral Theoretical PhysicsNuclear Physics - TheoryThis volume is intended for use as a text for an introductory quantum field theory course that can include both particle and condensed matter physics students. Dr. Strickland starts with a brief review of classical field theory and uses this as a jumping off point for the quantization of classical field, thereby promoting them to proper quantum fields. He then presents the formalism for real and complex scalar field theories, fermion field quantization, gauge field quantization, toy models of the nuclear interaction, and finally the full Lagrangian for QED and its renormalization. Part of IOP Series in Nuclear Medicine.For this volume the target audience is students who wish to learn about relativistic quantum field theory applied to particle physics, however, it is still very accessible and useful for students of condensed matter. This volume begins with the introduction of the path integral formalism for non-relativistic quantum mechanics and then, using this as a basis, extends the formalism to quantum fields with an infinite number of degrees of freedom. Dr. Strickland then discusses how to quantize gauge fields using the Fadeev-Popov method and fermionic fields using Grassman algebra. He then presents the path integral formulation of quantum chromodynamics and its renormalization. Finally, he discusses the role played by topological solutions in non-abelian gauge theories.The application of quantum chromodynamics to high-energy particle scattering is discussed with concrete examples for how to compute QCD scattering cross sections. Experimental evidence for the existence of quarks and gluons is then presented both within the context of the naive quark model and beyond. Dr Strickland then reviews our current understanding of the weak interaction, the unified electroweak theory, and the Brout-Higgs-Englert mechanism for the generation of gauge boson masses. The last two chapters contain a self-contained introduction to finite temperature quantum field theory with concrete examples focusing on the high-temperature thermodynamics of scalar field theories, QED, and QCD.Morgan and Claypooloai:cds.cern.ch:27092862019
spellingShingle General Theoretical Physics
Nuclear Physics - Theory
Strickland, Michael
Relativistic quantum field theory
title Relativistic quantum field theory
title_full Relativistic quantum field theory
title_fullStr Relativistic quantum field theory
title_full_unstemmed Relativistic quantum field theory
title_short Relativistic quantum field theory
title_sort relativistic quantum field theory
topic General Theoretical Physics
Nuclear Physics - Theory
url http://cds.cern.ch/record/2709286
work_keys_str_mv AT stricklandmichael relativisticquantumfieldtheory